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Reexamination of carbodiimide as a possible affinity label for the acetylcholine receptor at the frog neuromuscular junction.

The effects of water-soluble carbodiimide were examined at the frog neuromuscular junction. Acetylcholine sensitivity was measured using a fluid electrode technique and intracellular recording of miniature end-plate potentials. The carbodiimide blocked synaptic sensitivity by a reversible, curare-like action. Irreversible blockade was also observed, probably due to covalent binding. The conditions of reaction and irreversibility suggest that several different residues may be attacked. The inability of cholinergic antagonists to protect the receptor from attack indicates that nonspecific sites, and not the acetylcholine binding site, are involved.

Acetylcholine

Toluene di-isocyanate-induced asthma. I. Reactions to TDI, MDI, HDI and histamine.

A group of twenty four workers handling di-isocyanates and with respiratory disease were investigated by occupational-type bronchial provocation tests for sensitivity to toluene di-isocyanate (TDI), to which all were exposed, and to diphenylmethane di-isocyanate (MDI) and hexamethylene di-isocyanate (HDI). Sixteen gave asthmatic reactions to TDI and eight of these also reacted to MDI. Four of the eight TDI and MDI reactors had histories of exposure only to TDI, and of them two reacted also to HDI. Of nine subjects tested with HDI, three gave asthmatic reactions, and all three also reacted to TDI and MDI. Thus reactions to MDI and HDI were elicited only in the TDI reactors. The possibility of specific sensitivity to these and other di-isocyanates requires tests in subjects exposed to them and not to TDI.

Asthma

Binding of alpha-bungarotoxin and cholinergic ligands to acetylcholine receptors in the membrane of skeletal muscle.

A membrane fraction enriched in acetylcholine receptors was prepared from denervated cat leg muscles. 97% of the alpha-bungarotoxin-binding sites in the dispersed membranes are sensitive to nicotinic cholinergic ligands. In intact msucle, 90% are. A filtration assay of the binding to the membranes of tritiated alpha-bungarotoxin, as retarded by these ligands, provides a convenient system for the determination of affinities of ligands for the muscle receptor in its membrane-bound state. Affinities were found thus for 6 nicotinic ligands. An allosteric system, rather than desensitisation, may explain the high affinities observed for certain ligands.

Acetylcholine

Synthesis and biological activity of spin-labeled analogs of biotin, hexamethonium, decamethonium, dichlorisoproterenol, and propranolol.

Spin-labeled analogs of biotin (vitamin H), hexamethonium, decamethonium, dichlorisoproterenol, propranolol, and primaquine containing the nitroxide free radical have been synthesized and tested for biological activity. The four spin-labeled analogs of biotin, 4-biotinamido-2,2,6,6-tetramethyl-1-piperidinyloxy (IV), 3-biotinamido-2,2,5,5-tetramethyl-1-pyrrolidinyloxy (V), 3-biotinamidomethyl-2,2,5,5-tetramethyl-1-pyrrolidinyloxy (VI), and 4-(biotinylglycyl)amino-2,2,6,6-tetramethyl-1-piperidinyloxy (VII), all interacted with avidin, a specific biotin binding protein found in raw egg white, at the same sites as did biotin itself. An unsymmetrical decamethonium spin label (XVIII) in which one of the quaternary methyl groups had been replaced by the 4-(2,2,6,6-tetramethyl-1-piperidinyloxy) moiety was 13 times more potent as an inhibitor of Torpedo californica acetylcholinesterase than the parent drug. The symmetrical decamethonium (XVI) and hexamethonium (XIV) spin labels were 18 and 1.8 times as active as decamethonium in the same assay system. The substitution of the 4-(2,2,6,6-tetramethyl-1-piperidinyloxy) group for the isopropyl groups of beta-adrenergic blocking drugs dichlorisoproterenol and propranolol, to give spin labels XXI and XXII, caused a 45 and 54% reduction, respectively, in the ability of these compounds to inhibit the isoproterenol-stimulated activity of rat fat cell membranes. Finally, modification of primaquine by the introduction of the 4-(2,2,6,6-tetramethyl-1-piperidinyloxy) substituent into the amino group of the butyl side chain completely abolished the ability of the drug to bind to nuclei acids. These results suggest that the incorporation of the nitroxide group into drug molecules may be a useful approach to the synthesis of more specific spin labels for biological systems, such as egg white avidin, acetylcholinesterase, and the beta-adrenergic receptor.

Adenylyl Cyclase Inhibitors

Muscarinic receptor regulation of NG108-15 adenylate cyclase: requirement for Na+ and GTP.

Cholinergic agonists inhibit the basal and PGE1-activated adenylate cyclase activity in membranes isolated from the mouse neuroblastoma x glioma hybrid cell NG108-15. Inhibition is observed with acetylcholine, acetyl-beta-methylcholine and carbachol and is blocked by two specific muscarinic antagonists, atropine and quinuclydinylbenzilate. Inhibition of basal and PGE1-activated activity is only partial. Carbachol-directed inhibition has an apparent Km of 6 microM in the presence or absence of PGE1. Both the guanine nucleotide GTP and the monovalent cation Na+ are required for this muscarinic inhibition of basal and PGE1-activated NG108-15 adenylate cyclase. The selectivity observed for monovalent cations (all chloride salts) in this process is Na+ congruent to Li+ greater than K+ greater than Choline+ with the ED50 for Na+ congruent 40 microM. Of the nucleotides tested, only IT (and not ATP, UTP or CTP) replaces GTP in this process. GTP at 10 microM represents a saturating nucleotide concentration. Opiate-directed inhibition of NG108-15 adenylate cyclase has recently been shown to exhibit a similar requirement for GTP and Na+ [Blume, A. J., Lichtshtein, D. and Boone, G. (1979) Proc. National Academy of Sciences, USA, in press]. The data presented here therefore support the hypothesis that the general transfer of inhibitory information from membrane receptors to adenylate cyclase involves both a Na+ and GTP-sensitive process.

4-(3-Butoxy-4-methoxybenzyl)-2-imidazolidinone

Pharmacologic independence of subfornical organ receptors mediating drinking.

In rats with chronically implanted cannulae in the subfornical organ (SFO), the relationship between cholinergic- and angiotensin (AII)-induced drinking was investigated pharmacologically. All substances were injected via SFO cannulae which did not rupture ventricular ependyma. Pretreatment with low doses of the muscarinic antagonist atropine abolished carbachol-induced drinking, while nicotinic antagonists had no effect. Nonetheless, pretreatment with much larger doses of atropine had no effect on AII-induced drinking. Similarly, relatively small doses of the AII antagonist, saralasin, blocked AII-induced drinking, yet a much larger dose of saralasin had no effect on carbachol-induced drinking. The receptors mediating cholinergic- and AII-induced drinking therefore cannot be in series and must be in parallel. A hypothesis is proposed to account for this independence and for the significance of the SFO cholinergic innervation.

Angiotensin II

Reversible inhibition of the motility of human spermatozoa by tetraphenylboron.

The motility of washed suspensions of human spermatozoa was completely inhibited by tetraphenylboron at concentrations that had little effect on sperm energy metabolism. The inhibition of motility was reversed by quaternary ammonium salts, albumin, caffeine, dibutyryl cyclic AMP and potassium ions. The addition of ouabain to cells redndered immotile by tetraphenylboron prevented reinitiation of motility by potassium but not by the other compounds. These observations, together with the effect of tetraphenylboron on the fluorescence of sperm suspensions treated with 1-anilinonaphthalene 8-sulphonic acid, suggest that the binding of tetraphenylboron to sites on the sperm plasma membrane is involved in the inhibition of sperm motility and the cyclic AMP may be involved in the regulation of ion transport across the plasma membrane.

Adenosine Triphosphate

Pharmacological studies on 3-[gamma-(p-fluorobenzoyl)propyl]-2,3,4,4a,5,6-hexahydro-1-(H)-pyrazino (1,2-a) quinoline (compound 69/183). Part I: Hypotensive activity.

3-[gamma-(p-Fluorobenzoyl)propyl]-2,3,4,4a,5,6-hexahydro-1-(H)-pyrazinol(1,2-a)quinoline (compound 69/183, centpyraquin) has been found to possess promising hypotensive activity in anaesthetised cat, dog and monkey- It also lowers the blood pressure of unanaesthetised cat, dog and hypertensive rat. The effective doses are between 0.5 to 2.0 mg/kg in all the species except rat, in which doses of 10.0 and 20.0 mg/kg are effective. The compound potentiates epinephrine and norepinephrine pressor responses but inhibits carotid occlusion, tyramine and DMPP induced pressor responses. The contraction of the nictitating membrane due to pre- as well as post-ganglionic sympathetic nerve stimulation is blocked equally. In mice the compound produces ptosis which is antagonised by N-benzyl-N-methylguanidine. Localisation of the compound either to the superior cervical ganglion of cat or to the central cardiovascular loci has no effect on the activities of either of them. No evidence of an initial catecholamine release by the compound could be obtained. It has weak smooth muscle relaxant activity. The mechanism of hypotensive action seems to be the blockade of adrenergic neurones along with direct smooth muscle relaxation.

Adrenal Glands

Haemodynamic effects of the quaternary ammonium compound QX 572 in anaesthetized cats. II. Studies on the mechanism for the cardiac chronotropic effects.

The antiarrhythmic compound, QX 572, has been shown to increase heart rate both in patients and experimental animals. In anaesthetized cats the positive cardiac chronotropic effects were mainly due to increased sympathetic activity. The present experiments were designed to localize the active sites within the sympathetic nerve system. It was found that QX 572 caused an increased heart rate in response to electrical stimulation of the cardiac sympathetic nerves, but this was not due to effects on the CNS, the sympathetic ganglia or the cardiac adrenergic beta-receptors. It is concluded that QX 572 by some action increased the amount of noradrenaline released from the cardiac sympathetic nerve endings. The mechanism for this effect has not been clarified.

Adrenalectomy

Possibilities for a cholinergic action on smooth musculature and on sympathetic axons in brain vessels mediated by muscarinic and nicotinic receptors.

A pharmacological identification and characterization of cholinergic receptors was carried out in pial arteries of cats. In one series of experiments, the middle cerebral artery was suspended in an organ bath for recording fo circular motor activity. Parasympathomimetic compounds produced either a relaxation or a contraction. The relaxation occurred at low doses (up to 10(-6) M), and the response was inhibited in a competitive manner by atropine. The mean KB value (determined with acetylcholine as agonist) was 3.85 X 10(-11) M, and the corresponding pA2 value 10.43. At higher doses, the parasympathomimetics produced a contraction. This effect, too, was inhibited in a competitive manner with atropine. The calculated mean KB value with acetylcholine as agonist was 1.12 X 10(-11) M, and pA2 was 10.07. The motor responses did not require an intact perivascular sympathetic innervation, which shows that the effects were mediated by muscarinic type of cholinergic receptors present in the smooth musculature. In another series of experiments, pial arteries were preincubated in the presence of 3H-norepinephrine, and the amount of tritium efflux was measured in a superfusion system before or during electrical field stimulation (12 V, 1 msec pulse duration, 10 Hz). The efflux was minimized by sympathetic denervation, and the effect of transmural stimulation abolished by bretylium and guanethidine, which shows that the bulk of tritium overflow during stimulation originated from the perivascular sympathetic nerves. The marked elevation of tritium efflux during stimulation was enhanced by hexamethonium, and it was inhibited by nicotine and acetylcholine, whose effects were counteracted by hexamethonium (but not by atropine). This finding indicates the presence of nicotinic type of cholinergic receptors on the perivascular adrenergic nerves, allowing inhibition of norepinephrine by acetylcholine that may be liberated from the adjacent cholinergic terminals in the autonomic nerve plexus.

Acetylcholine

Similarities in effects of acetylcholine and dopamine on horizontal cells in the fish retina.

The effect of acetylcholine (ACh) on cone- and rod-connected horizontal cells (generating photopic and scotopic L-type S-potentials, respectively) in the fish (Eugerres plumieri) retina was compared with that of dopamine (DA), and some similarities were found in the effects. About two-thirds of the L-type horizontal cells examined were sensitive to a test solution containing ACh (10 mM in concentration) and BW-anticholinesterase (BW; 1.0 mM). ACh with BW augmented a center response and attenuated a surround response as did DA (0.2 mM), although the latter effect was more pronounced and longer-lasting. ACh with BW frequently produced oscillations of the horizontal cell membrane potential, as did DA with clonidine (alpha-adrenergic stimulant). Phentolamine (alpha-adrenergic blocker) interrupted both the effects of DA and ACh on the center and surround responses, while hexamethonium (cholinergic antagonist) appeared to interfere selectively with the effect of ACh. Therefore, the ACh-induced changes observed in the horizontal cell membrane potential are assumed to be mediated by the adrenergic system in the fish retina.

Acetylcholine